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首页> 外文期刊>The Journal of Chemical Physics >A whole-path importance-sampling scheme for Feynman path integral calculations of absolute partition functions and free energies
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A whole-path importance-sampling scheme for Feynman path integral calculations of absolute partition functions and free energies

机译:绝对分配函数和自由能的费曼路径积分计算的全路径重要性采样方案

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Using Feynman path integrals, a molecular partition function can be written as a double integral with the inner integral involving all closed paths centered at a given molecular configuration, and the outer integral involving all possible molecular configurations. In previous work employing Monte Carlo methods to evaluate such partition functions, we presented schemes for importance sampling and stratification in the molecular configurations that constitute the path centroids, but we relied on free-particle paths for sampling the path integrals. At low temperatures, the path sampling is expensive because the paths can travel far from the centroid configuration. We now present a scheme for importance sampling of whole Feynman paths based on harmonic information from an instantaneous normal mode calculation at the centroid configuration, which we refer to as harmonically guided whole-path importance sampling (WPIS). We obtain paths conforming to our chosen importance function by rejection sampling from a distribution of free-particle paths. Sample calculations on CH4 demonstrate that at a temperature of 200 K, about 99.9% of the free-particle paths can be rejected without integration, and at 300 K, about 98% can be rejected. We also show that it is typically possible to reduce the overhead associated with the WPIS scheme by sampling the paths using a significantly lower-order path discretization than that which is needed to converge the partition function. (C) 2016 AIP Publishing LLC.
机译:使用费曼路径积分,可以将分子分配函数编写为双积分,其内部积分涉及以给定分子构型为中心的所有闭合路径,而外部积分则涉及所有可能的分子构型。在以前使用蒙特卡洛方法评估此类分配函数的工作中,我们提出了构成路径质心的分子构型中重要采样和分层的方案,但我们依靠自由粒子路径对路径积分进行采样。在低温下,路径采样很昂贵,因为路径可能会偏离质心配置。现在,我们基于质心配置下的瞬时法向模式计算中的谐波信息,提出了一个基于整个谐波信息的整个Feynman路径重要性采样的方案,我们将其称为谐波引导的全路径重要性采样(WPIS)。我们通过从自由粒子路径的分布中进行拒绝采样来获得符合所选重要性函数的路径。在CH4上进行的样本计算表明,在200 K的温度下,约99.9%的自由粒子路径可以不经积分而被拒绝,而在300 K的温度下,约98%的自由粒子路径可以被拒绝。我们还表明,通常可以使用比收敛分区函数所需的路径低得多的低阶路径离散化来采样路径,从而减少与WPIS方案相关的开销。 (C)2016 AIP出版有限责任公司。

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